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深度化学和物理化学特性分析工业壳聚糖——生物防治应用。

Deep Chemical and Physico-Chemical Characterization of Antifungal Industrial Chitosans-Biocontrol Applications.

机构信息

Laboratoire de Chimie des Polymères Organiques, Université de Bordeaux, CNRS, Bordeaux INP, UMR 5629, 16 Avenue Pey-Berland, F-33600 Pessac, France.

Agroécologie, CNRS, INRAE, Institut Agro, University Bourgogne, University Bourgogne Franche-Comté, F-21000 Dijon, France.

出版信息

Molecules. 2023 Jan 18;28(3):966. doi: 10.3390/molecules28030966.

Abstract

Five different chitosan samples (CHI-1 to CHI-5) from crustacean shells with high deacetylation degrees (>93%) have been deeply characterized from a chemical and physicochemical point of view in order to better understand the impact of some parameters on the bioactivity against two pathogens frequently encountered in vineyards, and . All the samples were analyzed by SEC-MALS, H-NMR, elemental analysis, XPS, FTIR, mass spectrometry, pyrolysis, and TGA and their antioxidant activities were measured (DPPH method). Molecular weights were in the order: CHI-4 and CHI-5 (MW >50 kDa) > CHI-3 > CHI-2 and CHI-1 (MW < 20 kDa). CHI-1, CHI-2 and CHI-3 are under their hydrochloride form, CHI-4 and CHI-5 are under their NH form, and CHI-3 contains a high amount of a chitosan calcium complex. CHI-2 and CHI-3 showed higher scavenging activity than others. The bioactivity against was molecular weight dependent with an IC50 for CHI-1 = CHI-2 (13 mg/L) ≤ CHI-3 (17 mg/L) < CHI-4 (75 mg/L) < CHI-5 (152 mg/L). The bioactivity on zoospores was important, even at a very low concentration for all chitosans (no moving spores between 1 and 0.01 g/L). These results show that even at low concentrations and under hydrochloride form, chitosan could be a good alternative to pesticides.

摘要

五种不同的甲壳素样品(CHI-1 到 CHI-5)具有高脱乙酰度(>93%),从化学和物理化学的角度进行了深入的表征,以便更好地了解一些参数对生物活性的影响,针对葡萄园中经常遇到的两种病原体和。所有样品均通过 SEC-MALS、H-NMR、元素分析、XPS、FTIR、质谱、热重分析和 TGA 进行分析,并测量了它们的抗氧化活性(DPPH 法)。分子量顺序为:CHI-4 和 CHI-5(MW >50 kDa)> CHI-3 > CHI-2 和 CHI-1(MW < 20 kDa)。CHI-1、CHI-2 和 CHI-3 处于盐酸盐形式,CHI-4 和 CHI-5 处于 NH 形式,CHI-3 含有大量壳聚糖钙复合物。CHI-2 和 CHI-3 的清除活性高于其他样品。对的生物活性与分子量有关,IC50 为 CHI-1 = CHI-2(13 mg/L)≤CHI-3(17 mg/L)<CHI-4(75 mg/L)<CHI-5(152 mg/L)。对游动孢子的生物活性很重要,即使对于所有壳聚糖,浓度非常低(在 1 到 0.01 g/L 之间没有游动孢子)。这些结果表明,即使在低浓度和盐酸盐形式下,壳聚糖也可以作为农药的替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/685a/9919833/08123a8aef41/molecules-28-00966-g001.jpg

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